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Uncovering the tension-compression asymmetry of low stacking fault FCC alloys...
A certain type of alloys, with face-centered-cubic (FCC) structure and medium to low stacking fault energies (SFE), can trigger the formation of multiple twins (mechanical... -
Cobalt phase analysis and internal strain under thermomechanical loading: all...
The present proposal leans on the study of the elastoviscoplastic behavior of a polycrystalline Co by neutron diffraction (ENGIN-X) in line with theoretical investigations : 4... -
Internal phase strain evolution during high temperature deformation of model ...
Alpha-beta Ti and Zr alloys are an important class of high strength alloys used in aerospace and nuclear power generation. They are unique in that their mechanical properties... -
EBSD, DIC and Neutron Diffraction to characterise phase transformation and pl...
Martensitic transformations are solid-state transformations on completion of which a hard phase having very high dislocation density is obtained. Despite often being an... -
The influence of temperature on the nature martensitic transformation: A neut...
This experiment aims to study the strain induced transformation mechanism at temperatures between room temperature and low temperatures, and at extremely low temperatures. These... -
Internal phase strain evolution during high temperature deformation of model ...
Alpha-beta Ti and Zr alloys are an important class of high strength alloys used in aerospace and nuclear power generation. They are unique in that their mechanical properties... -
The effect of strain-path on the anisotropy of a dual phase steel
Steels often have anisotropic mechanical properties due to texture or internal stress generated by deformation. Recently it has become desirable to control this anisotropy, to... -
In situ quantification of the micro mechanisms during tensile deformation for...
Recently, high entropy alloy (HEA) concept has been studied as a means of achieving excellent properties of metallic alloys. We have developed an HEA alloy through powder...